Thermal Conductive Pads

Thermal conductive pads are designed to manage heat efficiently in electronic devices, offering reliable performance across industries such as military, electronics, automotive, and industrial applications. These pads are made from thermally conductive materials and are available in various configurations to meet specific application needs.

Key Feature

  • Efficient heat transfer: These pads create a reliable path for heat transfer between heat sinks, heat spreaders and electronic devices, ensuring optimal thermal management.
  • Alternative to thermal fluid: are a clean and efficient alternative to thermal fluid, with full coverage and excellent shock absorption properties.
  • Filling air spaces and cushioning: Designed to fit uneven surfaces, these pads fill air spaces and cushion rough surfaces, which increases the durability of the components.
  • Options with and without silicone: available in silicone-based and silicone-free versions in order to meet the different requirements of the customers.
  • Alternative to ceramic and mica insulators: These pads offer flexibility and high cost efficiency, and serve as a high-performance alternative to traditional ceramic and mica insulators.
  • Custom Interface: These pads are highly customizable to meet the advanced demands of sophisticated applications.
  • Short Circuit Resistance: Designed to withstand short circuits while maintaining strong thermal performance, making them suitable for high reliability applications.

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Application

  • Military and electronics: ideal for heat management in circuits and electronic components, and guarantee reliable operation and longevity.
  • Car: high efficiency in heat management in car electronics, guaranteeing correct heat distribution.
  • Industrial equipment: help dissipate heat effectively in industrial applications, and protect sensitive components from overheating

Optimize thermal performance with these advanced thermally conductive pads (pads), tailored for applications that require high durability and reliable heat management.

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